Method for Defining an Electronically Conductive Metal Structure on a Three-Dimensional Element and a Device Made From the Method
a three-dimensional element and metal structure technology, applied in the field of photolithographic technologies, can solve the problems of introducing a potential for lower yield and challenging the definition of electrical conductive metal traces or electrodes on the surface of the structur
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[0033]Turning now to the figures wherein like numerals define like elements among the several views, a method for defining a electrically conductive metalized structure, which may comprise an electrode or trace, on the surface of a three-dimensional element and a method for making the same is disclosed.
[0034]With respect to FIG. 1, a plurality of three-dimensional elements 1 are depicted. The illustrated three-dimensional elements 1 depict a plurality of prior art glass microspheres for use as glass shell resonator elements such as disclosed in U.S. Pat. No. 7,694,531, supra.
[0035]Three-dimensional elements 1 are disposed on substrate 5 which substrate material may comprise a silicon material or a glass material or both, such as in a Pyrex-Si wafer stack. The substrate comprises a first surface 10.
[0036]FIG. 2 illustrates a side view of an exemplar three-dimensional structure 1 in the form of a glass shell resonator structure disposed on first surface 10.
[0037]As depicted in FIG. 3,...
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